Optical scanning apparatus and method of controlling optical scanning apparatus

US2018191926A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2018191926-A1
Application numberUS-201815910088-A
CountryUS
Kind codeA1
Filing dateMar 2, 2018
Priority dateOct 23, 2015
Publication dateJul 5, 2018
Grant date

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  1. Title

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  5. First independent claim

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Abstract

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An optical scanning apparatus includes an optical fiber that emits illumination light from a distal end thereof toward a subject, an actuator that oscillates the distal end of the optical fiber, and a controller that controls the actuator so as to two-dimensionally scan the illumination light on the subject and so as to satisfy Conditional Expression of P1≤0.5×D, where D is a spot diameter of the illumination light on the subject, and P1 is a scanning-line pitch of the illumination light on the subject.

First claim

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1 . An optical scanning apparatus comprising: an optical fiber that emits illumination light from a distal end thereof toward a subject; an actuator that oscillates the distal end of the optical fiber; and a controller that controls the actuator so as to two-dimensionally scan the illumination light emitted from the distal end of the optical fiber on the subject, wherein the controller controls the actuator so as to satisfy Conditional Expression (1) below: P 1≤0.5× D,   (1) where D is a spot diameter of the illumination light on the subject, and P1 is a scanning-line pitch of the illumination light on the subject. 2 . The optical scanning apparatus according to claim 1 , wherein the controller controls the actuator so as to satisfy Conditional Expression (1)′ below: 0.25× D≤P 1.  (1)′ 3 . An optical scanning apparatus comprising: an optical fiber that emits illumination light from a distal end thereof toward a subject; an actuator that oscillates the distal end of the optical fiber; a controller that controls the actuator so as to two-dimensionally scan the illumination light emitted from the distal end of the optical fiber on the subject; and a light detecting unit that detects observation light generated in the subject as a result of the subject being irradiated with the illumination light, wherein the controller controls the light detecting unit so as to satisfy Conditional Expression (2) below: P 2≤0.5× D,   (2) where D is a spot diameter of the illumination light on the subject, and P2 is a sampling pitch of the observation light on the subject. 4 . The optical scanning apparatus according to claim 3 , wherein the controller controls the light detecting unit so as to satisfy Conditional Expression (2)′ below: 0.25× D≤P 2.  (2)′ 5 . The optical scanning apparatus according to claim 3 , wherein the controller controls the actuator so as to satisfy Conditional Expression (1) below: P 1≤0.5× D,   (1) where P1 is a scanning-line pitch of the illumination light on the subject. 6 . The optical scanning apparatus according to claim 5 , wherein the controller controls the actuator so as to satisfy Conditional Expression (1)′ below: 0.25× D≤P 1.  (1)′ 7 . The optical scanning apparatus according to claim 1 , wherein the controller controls the actuator so as to satisfy Conditional Expression (3) below: P 1= D/d×pf,   (3) where d is a core diameter of the optical fiber, and Pf is a scanning pitch of the optical fiber. 8 . The optical scanning apparatus according to claim 3 , wherein the controller controls the light detecting unit so as to satisfy Conditional Expression (4) below: P 2= D/d×pf,   (4) where d is a core diameter of the optical fiber, and Pf is a scanning pitch of the optical fiber. 9 . The optical scanning apparatus according to claim 7 , wherein the controller controls the actuator so as to oscillates the distal end of the optical fiber along a spiral path while changing the amplitude thereof with time along linear envelopes and so as to satisfy Conditional Expression (5) below: Pf=h max/ N,   (5) where N is the number of circulations in the spiral path, and hmax is the maximum amplitude of the distal end of the optical fiber. 10 . The optical scanning apparatus according to claim 8 , wherein the controller controls the actuator so as to oscillates the distal end of the optical fiber along a spiral path while changing the amplitude thereof with time along linear envelopes and so as to satisfy Conditional Expression (5) below: Pf=h max/ N,   (5) where N is the number of circulations in the spiral path, and hmax is the maximum amplitude of the distal end of the optical fiber. 11 . The optical scanning apparatus according to claim 9 , wherein the controller controls the actuator so as to satisfy Conditional Expressions (6) and (6)′ below: N≥ 2× h max/ d.   (6) N≤ 4× h max/ d.   (6)′ 12 . The optical scanning apparatus according to claim 10 , wherein the controller controls the actuator so as to satisfy Conditional Expressions (6) and (6)′ below: N≥ 2× h max/ d.   (6) N≤ 4× h max/ d.   (6)′ 13 . The optical scanning apparatus according to claim 7 , wherein the controller controls the actuator so as to oscillates the distal end of the optical fiber along a spiral path while changing the amplitude thereof with time along sinusoidal envelopes and so as to satisfy Conditional Expression (7) below: Pf≤π/ 2× h max/ N.   (7) 14 . The optical scanning apparatus according to claim 8 , wherein the controller controls the actuator so as to oscillates the distal end of the optical fiber along a spiral path while changing the amplitude thereof with time along sinusoidal envelopes and so as to satisfy Conditional Expression (7) below: Pf≤π/ 2× h max/ N.   (7) 15 . The optical scanning apparatus according to claim 13 , wherein the controller controls the actuator so as to satisfy Conditional Expression (8) below: N≥π×h max/ d.   (8) 16 . The optical scanning apparatus according to claim 14 , wherein the controller controls the actuator so as to satisfy Conditional Expression (8) below: N≥π×h max/ d.   (8) 17 . The optical scanning apparatus according to claim 8 , wherein the controller controls the actuator and the light detecting unit so as to satisfy Conditional Expression (9) below: Pf≤ 2× h max×sin(π× fd/fs ),  (9) where fs is a sampling frequency of the observation light sampled by the light detecting unit, fd is an oscillation frequency of the distal end of the optical fiber oscillated by the actuator, and hmax is the maximum amplitude of the distal end of the optical fiber. 18 . The optical scanning apparatus according to claim 17 , wherein the controller controls the actuator and the light detecting unit so as to satisfy Conditional Expression (10) below: fs≥ 4π× h max/ d×fd.   (10) 19 . A method of controlling an optical scanning apparatus that spirally scans light emitted from a distal end of an optical fiber on a subject, wherein, in a control step in which an actuator that oscillates the distal end of the optical fiber so as to two-dimensionally scan the illumination light emitted from the distal end of the optical fiber on the subject is controlled, the actuator is controlled so as to satisfy Conditional Expression (1) below: P 1≤0.5× D,   (1) where D is a spot diameter of the illumination light on the subject, and P1 is a scanning-line pitch of the illumination light on the subject.

Assignees

Inventors

Classifications

  • for picking-up images in sites, inaccessible due to their dimensions or hazardous conditions, e.g. endoscopes or borescopes · CPC title

  • H04N3/34Primary

    Elemental scanning area oscillated rapidly in direction transverse to main scanning direction · CPC title

  • of control signals · CPC title

  • using light-conductive means, e.g. optical fibres · CPC title

  • for fluorescence imaging · CPC title

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What does patent US2018191926A1 cover?
An optical scanning apparatus includes an optical fiber that emits illumination light from a distal end thereof toward a subject, an actuator that oscillates the distal end of the optical fiber, and a controller that controls the actuator so as to two-dimensionally scan the illumination light on the subject and so as to satisfy Conditional Expression of P1≤0.5×D, where D is a spot diameter of t…
Who is the assignee on this patent?
Olympus Corp
What technology area does this patent fall under?
Primary CPC classification H04N3/34. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Jul 05 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).